SMYD5 is a ribosomal methyltransferase that catalyzes RPL40 lysine methylation to enhance translation output and promote hepatocellular carcinoma

生物 甲基转移酶 甲基化 肝细胞癌 赖氨酸 翻译(生物学) 核糖体RNA 核糖体蛋白 生物化学 遗传学 核糖体 基因 氨基酸 核糖核酸 信使核糖核酸
作者
Bisi Miao,Ling Ge,Chenxi He,Xinghao Wang,Jibo Wu,Xiang Li,Kun Chen,Jinkai Wan,Shenghui Xing,Lingnan Ren,Zhennan Shi,Shengnan Liu,Jun Hu,Jiajia Chen,Yanyan Yu,Lijian Feng,Natasha Flores,Zhihui Liang,Xinyi Xu,Ruoxin Wang
出处
期刊:Cell Research [Springer Nature]
卷期号:34 (9): 648-660 被引量:13
标识
DOI:10.1038/s41422-024-01013-3
摘要

Abstract While lysine methylation is well-known for regulating gene expression transcriptionally, its implications in translation have been largely uncharted. Trimethylation at lysine 22 (K22me3) on RPL40, a core ribosomal protein located in the GTPase activation center, was first reported 27 years ago. Yet, its methyltransferase and role in translation remain unexplored. Here, we report that SMYD5 has robust in vitro activity toward RPL40 K22 and primarily catalyzes RPL40 K22me3 in cells. The loss of SMYD5 and RPL40 K22me3 leads to reduced translation output and disturbed elongation as evidenced by increased ribosome collisions. SMYD5 and RPL40 K22me3 are upregulated in hepatocellular carcinoma (HCC) and negatively correlated with patient prognosis. Depleting SMYD5 renders HCC cells hypersensitive to mTOR inhibition in both 2D and 3D cultures. Additionally, the loss of SMYD5 markedly inhibits HCC development and growth in both genetically engineered mouse and patient-derived xenograft (PDX) models, with the inhibitory effect in the PDX model further enhanced by concurrent mTOR suppression. Our findings reveal a novel role of the SMYD5 and RPL40 K22me3 axis in translation elongation and highlight the therapeutic potential of targeting SMYD5 in HCC, particularly with concurrent mTOR inhibition. This work also conceptually broadens the understanding of lysine methylation, extending its significance from transcriptional regulation to translational control.
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